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Zachary Taylor

8 accepted papers

2018

C-blox: A Scalable and Consistent TSDF-based Dense Mapping Approach

IROS 2018poster

In many applications, maintaining a consistent dense map of the environment is key to enabling robotic platforms to perform higher level decision making. Several works have addressed the challenge of creating precise dense 3D maps from visual sensors providing depth information. However, during oper…

Cited by 68SourcecodeScholar
2018

Safe Local Exploration for Replanning in Cluttered Unknown Environments for Microaerial Vehicles

RA-L 2018

In order to enable microaerial vehicles (MAVs) to assist in complex, unknown, unstructured environments, they must be able to navigate with guaranteed safety, even when faced with a cluttered environment they have no prior knowledge of. While trajectory-optimization-based local planners have been sh

Cited by 94SourceScholar
2018

Sparse 3D Topological Graphs for Micro-Aerial Vehicle Planning

IROS 2018poster

Micro-Aerial Vehicles (MAVs) have the advantage of moving freely in 3D space. However, creating compact and sparse map representations that can be efficiently used for planning for such robots is still an open problem. In this paper, we take maps built from noisy sensor data and construct a sparse g…

Cited by 80SourceScholar
2017

A low-cost system for high-rate, high-accuracy temporal calibration for LIDARs and cameras

IROS 2017poster

Deployment of camera and laser based motion estimation systems for controlling platforms operating at high speeds, such as cars or trains, is posing increasingly challenging precision requirements on the temporal calibration of these sensors. In this work, we demonstrate a simple, low-cost system fo…

Cited by 23SourceScholar
2017

Voxblox: Incremental 3D Euclidean Signed Distance Fields for on-board MAV planning

IROS 2017poster

Micro Aerial Vehicles (MAVs) that operate in unstructured, unexplored environments require fast and flexible local planning, which can replan when new parts of the map are explored. Trajectory optimization methods fulfill these needs, but require obstacle distance information, which can be given by…

Cited by 768SourceScholar
2016

Continuous-time trajectory optimization for online UAV replanning

IROS 2016poster

Multirotor unmanned aerial vehicles (UAVs) are rapidly gaining popularity for many applications. However, safe operation in partially unknown, unstructured environments remains an open question. In this paper, we present a continuous-time trajectory optimization method for real-time collision avoida…

Cited by 335SourceScholar
2016

Generalized information filtering for MAV parameter estimation

IROS 2016poster

In this paper we present a new estimation algorithm that allows for the combination of information from any number of process and measurement models. This adds more flexibility to the design of the estimator and in our case avoids the need for state augmentation. We achieve this by adapting the maxi…

Cited by 7SourceScholar